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  1. Online calculator, figures and tables with dynamic (absolute) and kinematic viscosity for air at temperatures ranging -100 to 1600°C (-150 to 2900°F) and at pressures ranging 1 to 10 000 bara (14.5 - 145000 psia) - SI and Imperial Units.

    • Oxygen

      Oxygen - Air - Dynamic and Kinematic Viscosity - The...

    • Ethylene

      Ethylene - Air - Dynamic and Kinematic Viscosity - The...

    • Dry Air

      Dry Air - Air - Dynamic and Kinematic Viscosity - The...

    • Propane

      Propane - Air - Dynamic and Kinematic Viscosity - The...

  2. 21 lip 2024 · Kinematic viscosity (marked with the Greek letter nuν\nuν) describes a relationship between dynamic (absolute) viscosity and air density. For comparison, check water viscosity calculator. You can obtain the kinematic viscosity of air by dividing dynamic viscosity by the density ρ\rhoρ: ν=μρ\nu = \frac{\mu}{\rho}ν=ρμ .

  3. calculatorshub.net › chemistry-calculators › dynamic-viscosity-of-air-calculatorDynamic Viscosity of Air Calculator Online

    13 mar 2024 · The Dynamic Viscosity of Air Calculator is a specialized tool that computes the resistance of air to flow, also known as its dynamic viscosity, under varying temperature conditions.

  4. 18 lis 2020 · Calculates a variety of air thermodynamic properties from the measured temperature, pressure, and humidity. Variables able to calculated: rho - [kg m^-3] - Density. mu - [N s m^-2] - Dynamic viscosity. k - [W m^-1 K^-1] - Thermal conductivity.

  5. Online calculator, figures and tables with dynamic (absolute) and kinematic viscosity for air at temperatures ranging -100 to 1600°C (-150 to 2900°F) and at pressures ranging 1 to 10 000 bara (14.5 - 145000 psia) - SI and Imperial Units.

  6. Compute answers using Wolfram's breakthrough technology & knowledgebase, relied on by millions of students & professionals. For math, science, nutrition, history ...

  7. Online calculator, figures and tables with dynamic (absolute) and kinematic viscosity for air at temperatures ranging -100 to 1600°C (-150 to 2900°F) and at pressures ranging 1 to 10 000 bara (14.5 - 145000 psia) - SI and Imperial Units.

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